Research field (2):
Green/sustainable/environmental chemistry
, Catalytic processes and resource chemistry
Research keywords (1):
Catalysis
Research theme for competitive and other funds (17):
2022 - 2025 Dual metal complexes on solid surface for double-activation of both nucleophiles and electrophiles
2021 - 2024 表面水素工学:水素スピルオーバー現象を活用した新規触媒プロセス
2021 - 2024 表面水素工学の学理構築と活用に関する研究総括
2020 - 2022 Concerted catalysis between immobilized active species and its support surface for inert bond activation
2017 - 2021 アルカンの協奏的活性化を指向した活性点集積型触媒の開発
2018 - 2020 Active-site accumulation on solid surface for acceleration of organic and organocatalytic reactions
2014 - 2019 Design and Synthesis of Efficient Molecular Nano Catalysis by 3D Active Site Control
2016 - 2018 Precise Design of Catalytic Surface with Multi-active Sites through the Site-Isolation Concept
2015 - 2018 Concerted catalysis on surfaces for activation of inert chemical bonds and transformation of stable molecules
2017 - 2018 固体表面における協同触媒作用概念に基づく不活性結合と不活性分子の活性化
2013 - 2016 Coexistence of Metal Complex and Organic Functions with Strongly Coordinating Ability on Same Solid Surface for Design of Novel Catalytic Structure
2012 - 2016 Synergistic Catalysis of Cationic Si Species and Organic Amines Immobilized on Solid Surface for Novel Reactions
2013 - 2014 新規銅錯体触媒による二酸化炭素からの実用的ギ酸合成
2006 - 2011 Study on developments of highly efficient selective oxidation and fuel cell oxidation catalysts and real-time structure information
2009 - 2010 Development of multifunctionalized solid acid catalysts for novel and efficient organic reactions
2007 - 2008 Development of acid-base bifunctional surfaces for efficient organocatalytic reactions
2005 - 2006 環境調和型one-pot反応系の構築を目指した新規不均一系触媒の開発
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Papers (152):
Ken MOTOKURA, Satoshi MISAKI, Shingo HASEGAWA, Moe TAKABATAKE, Yusuke TANIMURA, Yuichi MANAKA, Wang-Jae CHUN. Effects of the Support Preparation Conditions on the Direct Alkylation of Toluene Catalyzed by Hydrotalcite-supported Pd Nanoparticles and Solid Acid. Journal of the Japan Petroleum Institute. 2024. 67. 5. 186-194
Shingo Hasegawa, Koji Harano, Ken Motokura. RhRu Bimetallic Oxide Cluster Catalysts for Cross-Dehydrogenative Coupling of Arenes and Carboxylic Acids. Journal of the American Chemical Society. 2024
Satoshi Misaki, Moe Takabatake, Shingo Hasegawa, Yuichi Manaka, Wang-Jae Chun, Ken Motokura. Effect of Zeolites on the Alkylation of Aromatics with Alkanes using a Pd Nanoparticle/Solid Acid Cooperative Catalytic System. Green Carbon. 2024
Shingo Hasegawa, Ken Motokura. Design Strategy of Metal Nanoparticle Catalysis for C-H Bond Activation Reactions. ChemCatChem. 2024
Shunichi Sakai, Shingo Hasegawa, Siming Ding, Ryota Osuga, Kiyotaka Nakajima, Shinji Tanaka, Wang-Jae Chun, Ken Motokura. Low-Temperature N-Allylation of Allylic Alcohols via Synergistic Pd/Cu Catalysis: A Silica-Supported Dual-Metal-Complex Strategy. ACS Catalysis. 2024. 4835-4846
Siming Ding, Ken Motokura. Heterogeneous Supported Palladium Catalysts for Liquid-Phase Allylation of Nucleophiles. ChemPlusChem. 2020. 85. 11. 2428-2437
阿野大史, 椿俊太郎, Liu Anetsu, Chun Wang-jae, 本倉健, 藤井知, 藤井知, 和田雄二. Microwave Heating of Metal Nanoparticles Supported on Metal Oxides. 日本電磁波エネルギー応用学会論文誌(Web). 2020. 4
本倉健, 池田まりか, 南保雅之, CHUN Wang-Jae, 中島清隆, 田中真司. Concerted Catalysis of Pd Complex in Silica Mesopore for Allylation of Nucleophiles. 触媒討論会講演予稿集. 2018. 121st